Freshly ground basaltic minerals produce sufficient quantities of hydrogen peroxide (H2O2) when immersed in solution to explain the oxidizing characteristics of Martian soil samples collected by the Viking landers. H2O2 production occurs as a result of reactions between water and defects at the surface of mechanically pulverized minerals, analogous to carcinogenic quartz dusts. Our results also indicate that dehydroxylation of mineral surfaces results in increased H2O2 production, a highly relevant finding for dusts on the airless surface of the Moon. Reactive, pulverized minerals are important on planetary bodies where impact processes have generated fine-grained basaltic dusts, and may pose a significant health risk to astronauts visiting...
The findings of the life detection experiments carried out during the Viking mission to Mars were re...
Context. The formation of water on the dust grains in the interstellar medium may proceed with hydro...
International audienceSulfates and Fe-oxides identified on the Martian surface by orbital and in sit...
Freshly ground basaltic minerals produce sufficient quantities of hydrogen peroxide (H2O2) when imme...
--- Laboratory measurements of hydrogen peroxide produced from crushed basaltic minerals immersed in...
While hydrogen peroxide (H2O2) has been detected in the martian atmosphere, it has not been detected...
We investigate a new mechanism for producing oxidants, especially hydrogen peroxide (H2O2), on Mars....
The surface of Mars is a dynamic, cold environment where aeolian abrasion leads to the fracturing of...
Internal reportAlready since the 1970s, hydrogen peroxide (H2O2) has been suggested as a possible ox...
2 The density and composition of the martian atmosphere allow solar ultraviolet photons with wavelen...
[1] Analysis of two absorption features near 3 mm in the lunar reflectance spectrum, observed by the...
The Odyssey spacecraft documented the existence of heterogeneously distributed hydrogen at martian m...
Hydrogen peroxide (H2O2) has been suggested as a possible oxidizer of the martian surface. Photochem...
International audienceEver since the Viking mass spectrometer failed to detect organics on the surfa...
NASA plans to resume human exploration of the Moon in the next decade. One of the pressing concerns ...
The findings of the life detection experiments carried out during the Viking mission to Mars were re...
Context. The formation of water on the dust grains in the interstellar medium may proceed with hydro...
International audienceSulfates and Fe-oxides identified on the Martian surface by orbital and in sit...
Freshly ground basaltic minerals produce sufficient quantities of hydrogen peroxide (H2O2) when imme...
--- Laboratory measurements of hydrogen peroxide produced from crushed basaltic minerals immersed in...
While hydrogen peroxide (H2O2) has been detected in the martian atmosphere, it has not been detected...
We investigate a new mechanism for producing oxidants, especially hydrogen peroxide (H2O2), on Mars....
The surface of Mars is a dynamic, cold environment where aeolian abrasion leads to the fracturing of...
Internal reportAlready since the 1970s, hydrogen peroxide (H2O2) has been suggested as a possible ox...
2 The density and composition of the martian atmosphere allow solar ultraviolet photons with wavelen...
[1] Analysis of two absorption features near 3 mm in the lunar reflectance spectrum, observed by the...
The Odyssey spacecraft documented the existence of heterogeneously distributed hydrogen at martian m...
Hydrogen peroxide (H2O2) has been suggested as a possible oxidizer of the martian surface. Photochem...
International audienceEver since the Viking mass spectrometer failed to detect organics on the surfa...
NASA plans to resume human exploration of the Moon in the next decade. One of the pressing concerns ...
The findings of the life detection experiments carried out during the Viking mission to Mars were re...
Context. The formation of water on the dust grains in the interstellar medium may proceed with hydro...
International audienceSulfates and Fe-oxides identified on the Martian surface by orbital and in sit...